Influence of the Phosphor Layer Composition on Flexible Electroluminescent Device Performance

Author:

Esteves Dina12,Akgül Esra3ORCID,Sanivada Usha Kiran124ORCID,Moreira Inês P.12,Bessa João12ORCID,Silva Carla A.5,Cunha Fernando12,Fangueiro Raul12

Affiliation:

1. Fibrenamics—Institute for Innovation in Fiber-Based Materials and Composites, University of Minho, Campus de Azurém, 4800-058 Guimarães, Portugal

2. Center for Science and Technology (2C2T), University of Minho, Azurém Campus, 4800-058 Guimarães, Portugal

3. Department of Industrial Design Engineering, Faculty of Engineering, Erciyes University, 38090 Kayseri, Türkiye

4. Department of Mechanical Engineering, University of Minho, Azurém Campus, 4800-058 Guimarães, Portugal

5. Simoldes Plastics, Research & Innovation, Rua Comendador António da Silva Rodrigues 165, 3720-052 Oliveira de Azeméis, Portugal

Abstract

Electroluminescence (EL) is an innovative technology in the lighting area. EL devices’ main structure consists of a phosphor layer sandwiched between two electrodes. In this work, several alternating-current EL devices were developed by applying a set of sequential layers with combinations of in-house prepared inks and a commercially available ink as the phosphor layer. A flexible polyester textile substrate was functionalized with the inks by spray coating, after knife coating an interfacial layer directly on the surface. A thorough study was carried out on the phosphor layer composition to optimize the EL device performance, more precisely, illuminance intensity and illuminance homogeneity. The developed phosphor layer was composed of zinc sulfide doped with copper (between 30.0 and 38.1 wt%) and diluted by using a diluent at different concentrations (from 28.0 to 35.5 wt%). The best peak illuminance intensity of 61 lux was obtained when the phosphor ink presented a 35.4% ZnS:Cu ratio and was diluted with 33.0% diluent. This study aimed to determine the best formulation of the phosphor layer, which can be highly useful for further developments of EL devices, taking into account different applications in the market.

Funder

European Regional Development Fund

Publisher

MDPI AG

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3. Recent advances in flexible alternating current electroluminescent devices;Zhang;APL Mater.,2021

4. An Analysis of ZnS:Cu Phosphor Layer Thickness Influence on Electroluminescence Device Performances;Chansri;Int. J. Photoenergy,2017

5. The colour, texture, and luminance: Textile design methods for printing with electroluminescent inks;Kooroshnia;Cult. Sci. Color.-Color Cult. Sci. J.,2023

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